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WIND DAILY
Shifting winds in turbine arrays
by Staff Writers
Washington DC (SPX) Oct 28, 2013


Experimental "isocontours" data show the mean streamwise velocity along the center line of a scaled wind turbine array. Credit: J.Newman/RPI.

Researchers modeling how changes in air flow patterns affect wind turbines' output power have found that the wind can supply energy from an unexpected direction: below.

According to the researchers, who report their results in the journal Physics of Fluids, many wind turbine array studies overlook the fact that important airflow changes occur inside the array.

"We discovered that a typical measure of the significance of flow changes was rather deficient," says Jensen Newman, co-author of the paper and a graduate student at Rensselaer Polytechnic Institute's Department of Mathematical Sciences.

Inspired by a desire to describe the flow experienced by realistic wind turbine arrays in greater detail, the team created a model of how flow affects wind turbines' output power.

The researchers introduced a mathematical way to measure changes in the flow that gives a more accurate representation of the magnitude of these changes than other current measures. "It shows that in addition to energy being made available to the turbines from above, energy is also transferred from below," Newman explains.

The tools and methodologies developed by the team for calculating changes in the flow can now be applied to other studies -- for any type of flow with a repetitive pattern. Since they were also able to show that energy comes from below the rotors, it may be possible to exploit this by developing wind farms that draw more heavily on this previously unidentified source of energy.

Going forward the researchers plan to further expand the scope of their model. "We'll apply this analysis to the case of two-bladed vs. three-bladed turbines to identify the critical differences in flow patterns and how these affect turbine power production," says Newman.

"Similar analysis will be performed using much larger turbines to examine how the physics discovered here scale with turbine size so that the extrapolation of the results to full-scale wind farms can be better understood."

The paper, "Streamwise development of the wind turbine boundary layer over a model wind turbine array" by Andrew J. Newman, Jose Lebron, Charles Meneveau, and Luciano Castillo, appears in the journal Physics of Fluids.

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Related Links
American Institute of Physics
Wind Energy News at Wind Daily






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WIND DAILY
Spain launches first offshore wind turbine
Arinaga, Spain (AFP) Oct 21, 2013
Spain launched its first offshore wind turbine Monday, offering a moment of fleeting pride to an industry flagging from a decline in state support. The five megawatt turbine has been erected at the end of a dyke in the port of Arinaga on Gran Canaria in the Spanish archipelago of the Canary Islands. Standing 154 metres (505 feet tall) with 62.5-metre (205-feet) long blades, it can supply ... read more


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